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首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Copper-(II) and -(I) co-ordination by hexa-amine ligands of different rigidities. A thermodynamic, structural and electrochemical investigation
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Copper-(II) and -(I) co-ordination by hexa-amine ligands of different rigidities. A thermodynamic, structural and electrochemical investigation

机译:铜-(II)和-(I)通过不同刚性的六胺配体配位。热力学,结构和电化学研究

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Two new polyamine ligands 2,9-bis(2-methylaminoethylaminomethyl)phenanthroline (L3) and 6,6'-bis(2-methylaminoethylaminomethyl)-2,2'-bipyridyl (L4) have been synthesized. L3 and L4 contain respectively a phenanthroline and a bipyridyl unit bearing two N-methylethylenediamine side-arms. Their co-ordination properties toward Cu-II were studied by means of potentiometric, calorimetric, UV-vis spectroscopic and electrochemical measurements and compared with those of macrocyclic ligands with similar molecular architecture (L1 and L2). The macrocyclic ligands give only mononuclear complexes, while the acyclic ligands form mono- and bi-nuclear complexes in aqueous solution, due to their higher flexibility. Considering the mononuclear complexes, the analysis of the thermodynamic parameters for copper(II) co-ordination shows that the complexes with the acyclic ligands are mainly stabilized by the entropic change. On the contrary, the enthalpic term gives a more favourable contribution to the formation of the complexes with the macrocyclic ligands. This different behaviour is discussed in terms of ligand rigidity and ligand and metal desolvation. The crystal structure of the [CuL3](2+) complex shows the metal to be six-co-ordinated, with a rather unusual geometry, enveloped inside the ligand cleft and almost co-ordinatively saturated and shielded from solvent molecules. At the same time the two heteroaromatic nitrogens are weakly bound to the metal. [References: 79]
机译:合成了两个新的多胺配体2,9-双(2-甲基氨基乙基氨基甲基)菲咯啉(L3)和6,6'-双(2-甲基氨基乙基氨基甲基)-2,2'-联吡啶基(L4)。 L3和L4分别包含带有两个N-甲基乙二胺侧臂的菲咯啉和联吡啶单元。通过电位,量热,紫外-可见光谱和电化学测量研究了它们对Cu-II的配位性能,并与具有相似分子结构(L1和L2)的大环配体进行了比较。大环配体仅产生单核配合物,而无环配体由于其较高的柔韧性而在水溶液中形成单核和双核配合物。考虑到单核配合物,对铜(II)配位的热力学参数的分析表明,具有无环配体的配合物主要受熵变的影响而稳定。相反,焓术语对具有大环配体的配合物的形成有更有利的贡献。在配体刚度和配体与金属的去溶剂化方面讨论了这种不同的行为。 [CuL3](2+)配合物的晶体结构显示该金属是六配位的,具有非常不寻常的几何形状,被配体裂缝内部包裹,几乎被配位饱和并且被溶剂分子屏蔽。同时,两个杂芳族氮与金属弱结合。 [参考:79]

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